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Electrical and thermal transport properties of icosahedral and decagonal quasicrystals

机译:二十面体和十边形准晶体的电和热输运性质

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Electrical and thermal transport properties of quasicrystals are reviewed on the examples of i-Ag-In-Yb and i-Al-Cu-Fe icosahedral phases and d-Al-Co-Ni decagonal phase. Using samples of single-grain morphology and high structural quality, and performing the measurements along well-defined crystallographic directions, the following basic questions in the context of physical properties of quasicrystals are addressed, both experimentally and theoretically: (1) are the unusual transport properties of quasicrystals introduced by the quasiperiodicity of the structure or are they a consequence of complex local atomic order with no direct relationship to the quasiperiodicity; (2) what is the role of the electronic structure of quasicrystals in their electronic transport properties, especially the pseudogap in the electronic density of states in the vicinity of the Fermi energy; (3) what is the anisotropy of the transport coefficients along different crystallographic directions for icosahedral and decagonal quasicrystals and (4) what are the true intrinsic properties of quasicrystalline phases?
机译:在i-Ag-In-Yb和i-Al-Cu-Fe二十面体相和d-Al-Co-Ni十边形相的实例中综述了准晶体的电学和热输运性质。使用单晶形态和高结构质量的样品,并沿明确的晶体学方向进行测量,在准晶体的物理性质范围内,从实验和理论上解决了以下基本问题:(1)是非正常传输由结构的准周期性引入的准晶体的性质,或者它们是复杂的局部原子序的结果,与准周期性没有直接关系; (2)准晶体的电子结构在其电子输运特性中,特别是在费米能量附近的态电子密度中的伪能隙中起什么作用; (3)二十面体和十边形准晶体沿不同晶体学方向的输运系数的各向异性是什么?(4)准晶体相的真正本征性质是什么?

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